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Structural characterisation of [Cu2(bptd) (H2O) Cl4] and [Ni2(bptd)2(H2O)4] Cl4·3H2O; evidence of null intramolecular exchanges by EPR and magnetic measurements
Authors:Fouad Bentiss  Hervé Vezin  Elizabeth M Holt
Institution:a Laboratoire de Cristallochimie et Physicochimie du Solide, CNRS UMR 8012, ENSCL, BP.108, F-59652 Villeneuve d'Ascq Cedex, France
b Laboratoire de Chimie Organique et Macromoléculaire, CNRS UMR 8009, USTL, Bât C3, F-59655 Villeneuve d'Ascq Cedex, France
c Department of Chemistry, Oklahoma State University, Stillwater, OK 74078, USA
Abstract:Using the 2,5-bis(2-pyridyl)-1,3,4-thiadiazole (bptd), we recently prepared Cu2(bptd) (H2O) Cl4] and Ni2(bptd)2 (H2O)4] Cl4, 3H2O in which the magnetic centres are connected through one diazine+one chloro and two diazine ligand bridges, respectively. These two compounds are the first examples that show null intramolecular magnetic interactions despite M-M distances close to 3.7 Å within perfectly planar edifices:Down to View the MathML source, Cu2(bptd)Cl4(H2O)] is paramagnetic while, below Tt, half of the Cu2+ions interact, leading to residual paramagnetism of one Cu2+/f.u. Magnetic susceptibility measurements, EPR and pulsed EPR study indicate the original intermolecular nature of AF exchanges.Ni2(bptd)2(H2O)4]Cl4·3H2O susceptibility obeys a Curie-law involving pure paramagnetism. Moreover, its EPR spectrum can be interpreted on the basis of virtual S=1 monomers. Below 70 K, Zero Field Splitting (D∼275 G) due to dipolar interactions without magnetic exchanges could be responsible for the LT spectra splitting. For both compounds, the thia role is suggested as partially responsible for the null-in-plane magnetic exchanges.
Keywords:D  Crystal structure  D  Electron paramagnetic resonance
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